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首页> 外文期刊>Journal of Cell Science >BOH1 cooperates with Polo-like kinase to regulate flagellum inheritance and cytokinesis initiation in Trypanosoma brucei
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BOH1 cooperates with Polo-like kinase to regulate flagellum inheritance and cytokinesis initiation in Trypanosoma brucei

机译:Boh1与Polo样激酶合作,以调节鞭毛遗传和细胞因子在Trypanosoma Brucei中的启动

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摘要

Trypanosoma brucei possesses a motile flagellum that determines cell morphology and the cell division plane. Inheritance of the newly assembled flagellum during the cell cycle is controlled by the Polo-like kinase homolog TbPLK, which also regulates cytokinesis initiation. How TbPLK is targeted to its subcellular locations remains poorly understood. Here we report the trypanosome-specific protein BOH1 that cooperates with TbPLK to regulate flagellum inheritance and cytokinesis initiation in the procyclic formof T. brucei. BOH1 localizes to an unusual sub-domain in the flagellum-associated hook complex, bridging the hook complex, the centrin arm and the flagellum attachment zone. Depletion of BOH1 disrupts hook-complex morphology, inhibits centrin-arm elongation and abolishes flagellum attachment zone assembly, leading to flagellum mis-positioning and detachment. Further, BOH1 deficiency impairs the localization of TbPLK and the cytokinesis regulator CIF1 to the cytokinesis initiation site, providing a molecular mechanism for its role in cytokinesis initiation. These findings reveal the roles of BOH1 in maintaining hook-complex morphology and regulating flagellum inheritance, and establish BOH1 as an upstream regulator of the TbPLK-mediated cytokinesis regulatory pathway.
机译:布氏锥虫具有能动鞭毛确定细胞形态和细胞分裂平面。在细胞周期期间的新组装的鞭毛继承由受控Polo样激酶同源物TbPLK,这也调节胞质分裂开始。 TbPLK是如何靶向它的亚细胞定位仍然知之甚少。在这里,我们报告的具体锥虫蛋白BOH1与TbPLK协作,以调节鞭毛继承和胞质分裂开始在procyclic formof布氏锥虫。 BOH1定位于在鞭毛相关钩复杂一个不寻常的子域,桥接钩复杂,中心蛋白臂和鞭毛连接区。 BOH1的耗尽破坏钩复杂的形态,抑制中心蛋白臂伸长和组装废除鞭毛连接区,导致鞭毛误定位和分离。此外,BOH1不足而引起TbPLK的定位和胞质分裂调节CIF1到胞质起始位点,为它在细胞分裂开始作用的分子机制。这些发现揭示BOH1的角色在保持钩复杂的形态和调节鞭毛继承,并建立BOH1作为TbPLK介导的胞质分裂调节途径的上游调节剂。

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